Haining Dong
Papers
2
Total Citations
35
H-Index
2
About
Haining Dong’s research centers on the control and synchronization of differential mobile robots, with a focus on enhancing trajectory tracking and orientation accuracy through innovative adaptive algorithms. Their major contribution lies in developing coupling control schemes that synchronize the motions of two driving wheels to minimize orientation errors—a critical challenge in mobile robotics. Dong’s 2005 paper on orientation control via wheel synchronization, which has garnered 26 citations, introduces an adaptive coupling algorithm that directly addresses the synchronization error between wheels, significantly improving robot stability and path-following precision. This work builds on their earlier 2004 study on adaptive coupling for tracking control, cited 9 times, which reframes the control problem by prioritizing wheel motion coordination over traditional approaches. By tackling the root cause of orientation drift, Dong’s research offers practical solutions for differential drive systems, with implications for autonomous navigation, industrial automation, and service robotics. Their work is notable for shifting focus from external trajectory corrections to internal wheel synchronization, providing a robust framework for real-time control. With a cumulative impact reflected in these foundational papers, Dong’s contributions continue to influence researchers developing precise, adaptive control strategies for wheeled mobile robots.
Research Focus
Key Achievements
Top Papers
- 1
- 2